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首页> 外文期刊>Angewandte Chemie >Quantum Mechanics/Molecular Mechanics Study on the Photoreactions of Dark- and Light-Adapted States of a Blue-Light YtvA LOV Photoreceptor
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Quantum Mechanics/Molecular Mechanics Study on the Photoreactions of Dark- and Light-Adapted States of a Blue-Light YtvA LOV Photoreceptor

机译:蓝光YTVA LOV感光体的深色和光适应状态光射的量子力学/分子力学研究

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摘要

The dark-and light-adapted states of YtvA LOV domains exhibit distinct excited-state behavior. We have employed high-level QM(MS-CASPT2)/MM calculations to study the photochemical reactions of the dark-and light-adapted states. The photoreaction from the dark-adapted state starts with an S-1 -> T-1 intersystem crossing followed by a triplet-state hydrogen transfer from the thiol to the flavin moiety that produces a diradical intermediate, and a subsequent internal conversion that triggers a barrierless C-S bond formation in the S-0 state. The energy profiles for these transformations are different for the four conformers of the dark-adapted state considered. The photochemistry of the light-adapted state does not involve the triplet state: photoexcitation to the S-1 state triggers C-S bond cleavage followed by recombination in the S-0 state; both these processes are essentially barrierless and thus ultrafast. The present work offers new mechanistic insights into the photoresponse of flavin-containing blue-light photoreceptors.
机译:YTVA Lov域的黑暗和浅色调整状态表现出明显的兴奋状态行为。我们采用了高级QM(MS-CASPT2)/ mm计算,以研究深色和轻度调整状态的光化学反应。来自深色适应状态的光射反应以S-1 - > T-1基线交叉开始,然后从硫醇转移到产生Diradical中间体的黄素部分,以及随后触发A的内部转化S-0状态下的障碍CS键形成。这些变换的能量谱不同于考虑的深适应状态的四个符合子。光改性状态的光化学不涉及三重态状态:S-1状态的光透镜触发C-S键切割,然后在S-0状态下重组;这两个过程都基本上是障碍,因此超快。目前的工作提供了新的机制见解,进入了含有黄液蓝光光感受器的光响应。

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